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Sunday, May 17, 2026

Robotic gripper makes use of measuring tape fingers for delicate object dealing with


Metal measuring tape is an fascinating materials, in that it is inflexible sufficient to carry its form when prolonged, however versatile sufficient that it provides manner underneath strain. Scientists have taken benefit of that twin nature in a intelligent new robotic gripper designed for dealing with fragile gadgets.

Created by Assoc. Prof. Nick Gravish and colleagues at UC San Diego, the mechanical appendage is called “GRIP-tape,” the phrase GRIP standing for “Greedy and Rolling In-Aircraft.” It grasps objects of assorted sizes and styles between two grippy however compliant triangular fingers.

Every of these fingers is made from a few lengths of measuring tape that are laid lengthwise one on prime of the opposite, and adhesive-taped collectively in that configuration … in order that they kind a single two-layered ribbon that is bent/buckled on the tip of the finger. Two motorized reels – one at both finish of that ribbon – roll it in and spool it out as wanted.

A New Robotic Gripper Based mostly on Measuring Tape is Sizing Up Fruit and Veggie Choosing

By various the path wherein every of the 4 reels (two per finger) rotate relative to at least one one other, the fingers could be made longer or shorter, they’ll rotate an merchandise grasped between them, or they’ll draw that merchandise in or out, conveyor-belt-style. Your entire gripper can even roll backward and forward and tilt up and down, swiveling on its robotic wrist.

It’s hoped that when the know-how is developed additional, it may very well be utilized in fields reminiscent of agriculture, for selecting vegatables and fruits with out damaging them. In actual fact, UCLA’s EEWOC (Prolonged-reach Enhanced Wheeled Orb for Climbing) robotic already makes use of a measuring-tape-based magnetic limb for climbing steel constructions.

A closer look at the GRIP-tape gripper
A more in-depth have a look at the GRIP-tape gripper

UC San Diego

”We wish to search for non-traditional, non-intuitive robotic mechanisms,” says Gravish. “The tape measure is such a beautiful construction due to its mixed softness and stiffness collectively.”

A paper on the research was just lately printed within the journal Science Advances.

Supply: College of California, San Diego



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